Projects
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The “Low dose radiation risks: present research and future perspectives” Advanced Research Workshop is a NATO (North Atlantic Treaty Organization)-sponsored workshop organized by the McMaster University (Canada) and Institute of Molecular Biology NAS RA (National Academy of Sciences of Republic of Armenia) which offers a unique opportunity to learn about new discoveries and exchange experience with professionals in the field of radioecology, radiobiology, country-specific regulatory agencies, ...
Programme: Events
Public web page: https://imb.am/rad2025/
Long-term environmental exposure to metals leads to epigenetic changes and may increase risks to human health. The human epidemiologic and the toxicologic animal model studies provide strong evidence of metal exposure related DNA methylation changes, and, consequently alterations in gene expression, in metabolic, genetic and signal transduction pathways and their functions. The current study is designed to investigate genome wide DNA methylation and transcriptomic changes induced by human chronic ...
Programme: Genes, Environment and Chronic Diseases
Public web page: Not specified
Start date: 1st Feb 2020
Space radiation (IR) from Solar Particle Events (SPE) and Galactic Cosmic Rays (GCR), also known as high charge and energy (HZE) IR, is a primary risk associated with deep-space missions. There are limited animal and human studies on the risk of cardiovascular disease (CVD) development due to space-IR. The cardiac effects induced by space-type IR, specifically simplified GCR simulated (simGCRsim)-IR, are yet to be discovered. We hypothesized that gamma (γ) and simGCRsim IR-induced biological ...
Programme: Space Radiobiology
Public web page: Not specified
Start date: 1st Jul 2023
End date: 30th Jun 2027
Programme: Bioinformatics Tools for Analysis of Big Genomic Data
Public web page: Not specified
This project focuses on studies around brain disorders and ageing.
Programme: Genes, Environment and Chronic Diseases
Public web page: Not specified
In this project genetic engineering and functional genomics approaches will be used to describe molecular mechanisms of FMF. Using DNA/RNA samples obtained from FMF patients and healthy subjects MEFV nanopore gene sequencing will be performed to identify genetic variants and possibly find novel putative functional variants. The impact of genetic variants on transcriptome landscape will be studies by RNA-sequencing using nanopore sequencing device. Based on MEFV sequencing data and patients clinical ...
Programme: Cellular basis of diseases
Public web page: Not specified
Start date: 1st Sep 2021
End date: 31st Aug 2024
Programme: Plant Genomics & Bioinformatics
Public web page: Not specified